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Quantification of Thickness Effects for Circumferential Through-Wall Cracked Pipe Bend with Un-Uniform Thickness under In-Plane Opening Bending

机译:在平面内开口弯曲下具有不均匀厚度的圆周通壁裂纹管弯曲的厚度效应的定量

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An Elbow is one of the major component that make up the piping system of a nuclear power plant and chemical plant facilities. In general, the elbow is made by welding a straight pipe and bend part. So, periodic welding inspection is required due to the potential defects in weld zone. Recently, the application of induction heating pipe bend is increasing in order to reduce this problem. Pipe bend made by induction heating band is not necessary welding process because it is made by bending a straight pipe but the intrados thickness and the extrados thickness are different. On the other hand, J-integrai is widely used to evaluate a structural integrity (to check crack stability) but the J estimation of pipe bend with un-uniform thickness is very difficult because of the thickness differences in each locations. This paper proposes a reference stress based J estimation scheme of circumferential through-wall cracked pipe bend with un-uniform thickness under in-plane opening bending loading condition. The pipe bend with un-uniform thickness is assumed to have different thickness between intrados and extrados and the crack to be located in the entre of the pipe bend, either at the intrados or extrados.
机译:肘部是构成核电站管道系统和化工厂设施的主要成分之一。通常,弯头通过焊接直管和弯曲部分来制造。因此,由于焊接区的潜在缺陷,需要定期焊接检查。最近,感应加热管弯曲的应用逐渐增加,以减少这个问题。通过感应加热带制造的管弯是不是必需的焊接过程,因为它是通过弯曲直管而是施加型材厚度和电厚度不同。另一方面,J-InteftaI广泛用于评估结构完整性(检查裂缝稳定性),但由于每个位置的厚度差异,均匀的管弯的J估计是非常困难的。本文提出了在平面内开口弯曲负载条件下具有不均匀厚度的圆周通壁裂纹管弯曲的基于参考应力的J估计方案。假设具有未均匀厚度的管弯曲在墨里和挤出机之间具有不同的厚度,并且在管弯的孔中位于管内或外壳中。

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